Investigation of Polarization Scattering Characteristics Metal Plates in the Near-Millimeter Wave Band by the Quasioptical Waveguide Modeling Method

V. K. Kiseliov, S. Mizrakhy, P. Nesterov
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Abstract

The work devoted to experimental investigation of polarization back-scattering characteristics square metal plates by the quasioptical waveguide modeling (QWM) method in the near-millimeter wave (NMMW) band. The polarimetric microcompact range (PMCR) was used for amplitude-phase scattering patterns measuring. PMCR created on the base of quasioptical transmission line, namely circular hollow dielectric waveguide (HDW), quasioptical and waveguide functional devices, and elements of SHF circuit has been used for amplitude-phase patterns of object scattering. The measured results of polarization scattering matrix (PSM) elements and their backscattering patterns (monostatic case) for a number of samples, namely thin metal plates of square cross-section have been presented. The patterns have been obtained for each plate in proper linear polarization basis. Comparison of experimental SMR elements patterns for plates in NMMW band with geometrical theory of diffraction (GTD) data was made.
准光波导建模方法研究近毫米波金属板偏振散射特性
本文利用准光波导建模(QWM)方法对近毫米波(NMMW)波段方形金属板偏振后向散射特性进行了实验研究。偏振微压缩范围(PMCR)用于幅相散射图的测量。基于准光传输线即圆形空心介质波导(HDW)、准光和波导功能器件以及SHF电路元件的PMCR已被用于物体散射的幅相图。本文给出了偏振散射矩阵(PSM)元件在若干样品(即方形截面金属薄板)上的测量结果及其后向散射图(单稳态情况下)。在适当的线偏振基础上,得到了每块板的图。对NMMW波段板的实验SMR元素图与几何衍射理论(GTD)数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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